Title of article
Slope Stability Analysis Under Combined Failure Criteria
Author/Authors
Su, Kai State Key Laboratory of Water Resources and Hydropower Engineering Science - Wuhan University, China , Li, Yin Earthquake Administration of Hubei Province, China , Cheng, Dan State Key Laboratory of Water Resources and Hydropower Engineering Science - Wuhan University, China
Pages
7
From page
125
To page
131
Abstract
Strength reduction finite element method (SRFEM) has been widely used to analyze the slope stability. Strength Reduction Factor (SRF) is yielded as the slope Factor Of Safety (FOS) when a running-though shear failure zone comes into being, in which the Plastic Element EQuivalent strain (PEEQ) is employed as the judgment of shear failure initiation in this paper. Moreover, the filed variable is set as same as SRF along the solution processing, FOS can be directly determined as the cor-responding value of field variable when the shear failure zone goes through. Three typical slopes with varying foot gradients of 26.6, 45 and 78.7 in degree are analyzed and fantastic results have been yielded, well agreeing with the Spencer’s results, when the linear Mohr-coulomb failure criterion is employed. However, during the solution process, tensile failure zone initiates at the slope top while the plastic failure zone initiates at the slope toe and this indicates that the failure mode of slope is combined. The results show that the combined failure zone with plastic failure and tensile failure appears much earlier than the unique plastic failure zone, which indicates that the traditional analytic method and SRFEM based on the unique linear Mohr-coulomb plasticity criteria overestimated the slope stability factor.
Keywords
Combined failure criteria , safety factor , slope stability , strength reduction factor , strength reduction finite element method
Journal title
Open Civil Engineering Journal
Serial Year
2016
Record number
2568244
Link To Document